ARG65680

anti-GAPDH antibody

anti-GAPDH antibody for ICC/IF,IHC-Formalin-fixed paraffin-embedded sections,Western blot and Human,Mouse,Rat

Cancer antibody; Controls and Markers antibody; Metabolism antibody; Neuroscience antibody; Signaling Transduction antibody; Loading Control antibody; Loading Control antibody for Cytoplasmic Fractions; Organelle Marker antibody for Cytoplasm; Autophagy Study antibody
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Overview

Product Description

Rabbit Polyclonal antibody recognizes GAPDH

Tested Reactivity Hu, Ms, Rat
Tested Application ICC/IF, IHC-P, WB
Host Rabbit
Clonality Polyclonal
Isotype IgG
Target Name GAPDH
Antigen Species Human
Immunogen Fusion protein of Human GAPDH.
Conjugation Un-conjugated
Alternate Names G3PD; GAPD; HEL-S-162eP; Peptidyl-cysteine S-nitrosylase GAPDH; HEL S162eP; Glyceraldehyde-3-phosphate dehydrogenase

Application Instructions

Application Suggestion
Tested Application Dilution
ICC/IF1:20 - 1:50
IHC-P1:50 - 1:100
WB1:1000 - 1:10000
Application Note * The dilutions indicate recommended starting dilutions and the optimal dilutions or concentrations should be determined by the scientist.

Properties

Form Liquid
Purification Affinity purification with immunogen.
Buffer PBS (pH 7.3), 0.02% Sodium azide and 50% Glycerol
Preservative 0.02% Sodium azide
Stabilizer 50% Glycerol
Storage Instruction For continuous use, store undiluted antibody at 2-8°C for up to a week. For long-term storage, aliquot and store at -20°C. Storage in frost free freezers is not recommended. Avoid repeated freeze/thaw cycles. Suggest spin the vial prior to opening. The antibody solution should be gently mixed before use.
Note For laboratory research only, not for drug, diagnostic or other use.

Bioinformation

Database Links

GeneID: 14433 Mouse GAPDH

GeneID: 24383 Rat GAPDH

GeneID: 2597 Human GAPDH

Gene Symbol GAPDH
Gene Full Name glyceraldehyde-3-phosphate dehydrogenase
Background GAPDH protein has been identified as a moonlighting protein based on its ability to perform mechanistically distinct functions. The product of this gene catalyzes an important energy-yielding step in carbohydrate metabolism, the reversible oxidative phosphorylation of glyceraldehyde-3-phosphate in the presence of inorganic phosphate and nicotinamide adenine dinucleotide (NAD). The encoded protein has additionally been identified to have uracil DNA glycosylase activity in the nucleus. Also, this protein contains a peptide that has antimicrobial activity against E. coli, P. aeruginosa, and C. albicans. Studies of a similar protein in mouse have assigned a variety of additional functions including nitrosylation of nuclear proteins, the regulation of mRNA stability, and acting as a transferrin receptor on the cell surface of macrophage. Many pseudogenes similar to this locus are present in the human genome. Alternative splicing results in multiple transcript variants. [provided by RefSeq, Nov 2014]
Function GAPDH has both glyceraldehyde-3-phosphate dehydrogenase and nitrosylase activities, thereby playing a role in glycolysis and nuclear functions, respectively. Participates in nuclear events including transcription, RNA transport, DNA replication and apoptosis. Nuclear functions are probably due to the nitrosylase activity that mediates cysteine S-nitrosylation of nuclear target proteins such as SIRT1, HDAC2 and PRKDC. Modulates the organization and assembly of the cytoskeleton. Facilitates the CHP1-dependent microtubule and membrane associations through its ability to stimulate the binding of CHP1 to microtubules. Glyceraldehyde-3-phosphate dehydrogenase is a key enzyme in glycolysis that catalyzes the first step of the pathway by converting D-glyceraldehyde 3-phosphate (G3P) into 3-phospho-D-glyceroyl phosphate. Component of the GAIT (gamma interferon-activated inhibitor of translation) complex which mediates interferon-gamma-induced transcript-selective translation inhibition in inflammation processes. Upon interferon-gamma treatment assembles into the GAIT complex which binds to stem loop-containing GAIT elements in the 3'-UTR of diverse inflammatory mRNAs (such as ceruplasmin) and suppresses their translation. [UniProt]
Highlight Related Antibody Duos and Panels:
ARG30258 Loading Controls for Whole Cell Lysate Antibody Panel
Related products:
GAPDH antibodies; GAPDH Duos / Panels; Anti-Rabbit IgG secondary antibodies;
Research Area Cancer antibody; Controls and Markers antibody; Metabolism antibody; Neuroscience antibody; Signaling Transduction antibody; Loading Control antibody; Loading Control antibody for Cytoplasmic Fractions; Organelle Marker antibody for Cytoplasm; Autophagy Study antibody
Calculated MW 36 kDa
PTM S-nitrosylation of Cys-152 leads to interaction with SIAH1, followed by translocation to the nucleus (By similarity). S-nitrosylation of Cys-247 is induced by interferon-gamma and LDL(ox) implicating the iNOS-S100A8/9 transnitrosylase complex and seems to prevent interaction with phosphorylated RPL13A and to interfere with GAIT complex activity.
ISGylated.
Sulfhydration at Cys-152 increases catalytic activity.
Oxidative stress can promote the formation of high molecular weight disulfide-linked GAPDH aggregates, through a process called nucleocytoplasmic coagulation. Such aggregates can be observed in vivo in the affected tissues of patients with Alzheimer disease or alcoholic liver cirrhosis, or in cell cultures during necrosis. Oxidation at Met-46 may play a pivotal role in the formation of these insoluble structures. This modification has been detected in vitro following treatment with free radical donor (+/-)-(E)-4-ethyl-2-[(E)-hydroxyimino]-5-nitro-3-hexenamide. It has been proposed to destabilize nearby residues, increasing the likelihood of secondary oxidative damages, including oxidation of Tyr-45 and Met-105. This cascade of oxidations may augment GAPDH misfolding, leading to intermolecular disulfide cross-linking and aggregation.

Images (9) Click the Picture to Zoom In

  • ARG65680 anti-GAPDH antibody WB image

    Western blot: 20 µg of 293T cell lysate stained with ARG65680 anti-GAPDH antibody at 1:10000 dilution.

  • ARG65680 anti-GAPDH antibody WB image

    Western blot: 20 µg of 22RV1 and DU145 cell lysates stained with ARG66302 anti-Vimentin antibody [SQab1859] at 1:2000 dilution and ARG65680 anti-GAPDH antibody at 1:10000 dilution.

  • ARG65680 anti-GAPDH antibody WB image

    Western blot: 20 µg of COLO205 and SW620 cell lysates stained with ARG66302 anti-Vimentin antibody [SQab1859] at 1:2000 dilution and ARG65680 anti-GAPDH antibody at 1:10000 dilution.

  • ARG65680 anti-GAPDH antibody ICC/IF image

    Immunofluorescence: MCF-7 stained with ARG65680 anti-GAPDH antibody. Blue: DAPI for nuclear staining.

  • ARG65680 anti-GAPDH antibody IHC-P image

    Immunohistochemistry: Paraffin-embedded Mouse heart stained with ARG65680 anti-GAPDH antibody at 1:100 dilution.

  • ARG65680 anti-GAPDH antibody WB image

    Western blot: 20 µg of 293T and HeLa cell lysate stained with ARG65680 anti-GAPDH antibody at 1:3000 dilution.

  • ARG65680 anti-GAPDH antibody WB image

    Western blot: 20 µg of COLO205, HCT116, HT29, SW480 and SW620 cell lysates stained with ARG10756 anti-HMGB1 antibody [1F3] (1:2000) and ARG65680 anti-GAPDH antibody (1:10000).

  • ARG65680 anti-GAPDH antibody WB image

    Western blot: 30 µg of 1) MDA-MB-231, and 2) MCF-7 lysates stained with ARG65680 anti-GAPDH antibody at 1:5000 dilution.

  • ARG65680 anti-GAPDH antibody WB image

    Western blot: 30 µg of HeLa cell lysate stained with ARG65680 anti-GAPDH antibody at 1:500 dilution.

Customer's Feedback

nuts_pic      Excellent

Review for anti-GAPDH antibody

Application:WB

Sample:COLO205 and SW620

Sample Loading Amount:20 µg

Primary Antibody Dilution Factor:1:10000

Primary Antibody Incubation Time:overnight

Primary Antibody Incubation Temperature:4 ºC

nuts_pic      Excellent

Review for anti-GAPDH antibody

Application:WB

Sample:22RV1 and DU145

Sample Loading Amount:20 µg

Primary Antibody Dilution Factor:1:10000

Primary Antibody Incubation Time:overnight

Primary Antibody Incubation Temperature:4 ºC

nuts_pic      Excellent

Review for anti-GAPDH antibody

Application:WB

Sample:293T, Mouse brain and Rat brain

Sample Loading Amount:20 µg

Primary Antibody Dilution Factor:1:10000

Primary Antibody Incubation Time:overnight

Primary Antibody Incubation Temperature:4 ºC

nuts_pic      Excellent

Review for anti-GAPDH antibody

Application:WB

Sample:A: MDA-MB-231, B: MCF-7

Sample Loading Amount:30 µg

Primary Antibody Dilution Factor:1:5000

Primary Antibody Incubation Time:overnight

Primary Antibody Incubation Temperature:4 ºC

nuts_pic      Good

Review for anti-GAPDH antibody

Application:WB

Sample:A: mouse brain; B: rat brain

Sample Loading Amount:30 µg

Primary Antibody Dilution Factor:1:3000

Primary Antibody Incubation Time:overnight

Primary Antibody Incubation Temperature:4 ºC

nuts_pic      Excellent

Review for anti-GAPDH antibody

Application:WB

Sample:HeLa cell lysate

Sample Loading Amount:30 µg

Primary Antibody Dilution Factor:1:500

Primary Antibody Incubation Time:overnight

Primary Antibody Incubation Temperature:4 ºC

Specific References

Engineering supramolecular dynamics of self-assembly and turnover of oncogenic microRNAs to drive their synergistic destruction in tumor models

WB / Human

Daria Chiglintseva et al.
Biomaterials.,  (2024)

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IDH1 mutation impairs antiviral response and potentiates oncolytic virotherapy in glioma

WB / 

Xueqin Chen et al.
Nat Commun.,  (2023)

publication_link

 

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RCC2 promotes prostate cancer cell proliferation and migration through Hh/GLI1 signaling pathway and cancer stem-like cells

WB / Human

Shenghan Wang et al.
Biol Direct.,  (2023)

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SOX2 regulates paclitaxel resistance of A549 non‑small cell lung cancer cells via promoting transcription of ClC‑3

WB / Human

Youwei Huang et al.
Oncol Rep,  (2022)

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Tight junction protein 1 promotes vasculature remodeling via regulating USP2/TWIST1 in bladder cancer

WB / Human

Xue-Qi Liu et al.
Oncogene.,  (2021)

publication_link

 

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miR-30b-5p acts as a tumor suppressor microRNA in esophageal squamous cell carcinoma.

WB / Human

Xu Jianfeng et al.
J Thorac Dis.,  (2019)

publication_link

 

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Negative Correlation Between Serum Levels of Homocysteine and Apolipoprotein M.

WB / 

Wei J et al.
Current Molecular Medicine.,  (2019)

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